alarm: remove direct access to interrupt handle
[dpdk.git] / lib / eal / linux / eal.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2010-2018 Intel Corporation.
3  * Copyright(c) 2012-2014 6WIND S.A.
4  */
5
6 #include <stdio.h>
7 #include <stdlib.h>
8 #include <stdint.h>
9 #include <string.h>
10 #include <stdarg.h>
11 #include <unistd.h>
12 #include <pthread.h>
13 #include <syslog.h>
14 #include <getopt.h>
15 #include <sys/file.h>
16 #include <dirent.h>
17 #include <fcntl.h>
18 #include <fnmatch.h>
19 #include <stddef.h>
20 #include <errno.h>
21 #include <limits.h>
22 #include <sys/mman.h>
23 #include <sys/queue.h>
24 #include <sys/stat.h>
25 #if defined(RTE_ARCH_X86)
26 #include <sys/io.h>
27 #endif
28 #include <linux/version.h>
29
30 #include <rte_compat.h>
31 #include <rte_common.h>
32 #include <rte_debug.h>
33 #include <rte_memory.h>
34 #include <rte_launch.h>
35 #include <rte_eal.h>
36 #include <rte_errno.h>
37 #include <rte_per_lcore.h>
38 #include <rte_lcore.h>
39 #include <rte_service_component.h>
40 #include <rte_log.h>
41 #include <rte_random.h>
42 #include <rte_cycles.h>
43 #include <rte_string_fns.h>
44 #include <rte_cpuflags.h>
45 #include <rte_interrupts.h>
46 #include <rte_bus.h>
47 #include <rte_dev.h>
48 #include <rte_devargs.h>
49 #include <rte_version.h>
50 #include <malloc_heap.h>
51 #include <rte_vfio.h>
52
53 #include <telemetry_internal.h>
54 #include "eal_private.h"
55 #include "eal_thread.h"
56 #include "eal_internal_cfg.h"
57 #include "eal_filesystem.h"
58 #include "eal_hugepages.h"
59 #include "eal_memcfg.h"
60 #include "eal_trace.h"
61 #include "eal_log.h"
62 #include "eal_options.h"
63 #include "eal_vfio.h"
64 #include "hotplug_mp.h"
65
66 #define MEMSIZE_IF_NO_HUGE_PAGE (64ULL * 1024ULL * 1024ULL)
67
68 #define SOCKET_MEM_STRLEN (RTE_MAX_NUMA_NODES * 10)
69
70 #define KERNEL_IOMMU_GROUPS_PATH "/sys/kernel/iommu_groups"
71
72 /* define fd variable here, because file needs to be kept open for the
73  * duration of the program, as we hold a write lock on it in the primary proc */
74 static int mem_cfg_fd = -1;
75
76 static struct flock wr_lock = {
77                 .l_type = F_WRLCK,
78                 .l_whence = SEEK_SET,
79                 .l_start = offsetof(struct rte_mem_config, memsegs),
80                 .l_len = RTE_SIZEOF_FIELD(struct rte_mem_config, memsegs),
81 };
82
83 /* internal configuration (per-core) */
84 struct lcore_config lcore_config[RTE_MAX_LCORE];
85
86 /* used by rte_rdtsc() */
87 int rte_cycles_vmware_tsc_map;
88
89 static const char *default_runtime_dir = "/var/run";
90
91 int
92 eal_create_runtime_dir(void)
93 {
94         const char *directory = default_runtime_dir;
95         const char *xdg_runtime_dir = getenv("XDG_RUNTIME_DIR");
96         const char *fallback = "/tmp";
97         char run_dir[PATH_MAX];
98         char tmp[PATH_MAX];
99         int ret;
100
101         if (getuid() != 0) {
102                 /* try XDG path first, fall back to /tmp */
103                 if (xdg_runtime_dir != NULL)
104                         directory = xdg_runtime_dir;
105                 else
106                         directory = fallback;
107         }
108         /* create DPDK subdirectory under runtime dir */
109         ret = snprintf(tmp, sizeof(tmp), "%s/dpdk", directory);
110         if (ret < 0 || ret == sizeof(tmp)) {
111                 RTE_LOG(ERR, EAL, "Error creating DPDK runtime path name\n");
112                 return -1;
113         }
114
115         /* create prefix-specific subdirectory under DPDK runtime dir */
116         ret = snprintf(run_dir, sizeof(run_dir), "%s/%s",
117                         tmp, eal_get_hugefile_prefix());
118         if (ret < 0 || ret == sizeof(run_dir)) {
119                 RTE_LOG(ERR, EAL, "Error creating prefix-specific runtime path name\n");
120                 return -1;
121         }
122
123         /* create the path if it doesn't exist. no "mkdir -p" here, so do it
124          * step by step.
125          */
126         ret = mkdir(tmp, 0700);
127         if (ret < 0 && errno != EEXIST) {
128                 RTE_LOG(ERR, EAL, "Error creating '%s': %s\n",
129                         tmp, strerror(errno));
130                 return -1;
131         }
132
133         ret = mkdir(run_dir, 0700);
134         if (ret < 0 && errno != EEXIST) {
135                 RTE_LOG(ERR, EAL, "Error creating '%s': %s\n",
136                         run_dir, strerror(errno));
137                 return -1;
138         }
139
140         if (eal_set_runtime_dir(run_dir, sizeof(run_dir)))
141                 return -1;
142
143         return 0;
144 }
145
146 int
147 eal_clean_runtime_dir(void)
148 {
149         const char *runtime_dir = rte_eal_get_runtime_dir();
150         DIR *dir;
151         struct dirent *dirent;
152         int dir_fd, fd, lck_result;
153         static const char * const filters[] = {
154                 "fbarray_*",
155                 "mp_socket_*"
156         };
157
158         /* open directory */
159         dir = opendir(runtime_dir);
160         if (!dir) {
161                 RTE_LOG(ERR, EAL, "Unable to open runtime directory %s\n",
162                                 runtime_dir);
163                 goto error;
164         }
165         dir_fd = dirfd(dir);
166
167         /* lock the directory before doing anything, to avoid races */
168         if (flock(dir_fd, LOCK_EX) < 0) {
169                 RTE_LOG(ERR, EAL, "Unable to lock runtime directory %s\n",
170                         runtime_dir);
171                 goto error;
172         }
173
174         dirent = readdir(dir);
175         if (!dirent) {
176                 RTE_LOG(ERR, EAL, "Unable to read runtime directory %s\n",
177                                 runtime_dir);
178                 goto error;
179         }
180
181         while (dirent != NULL) {
182                 unsigned int f_idx;
183                 bool skip = true;
184
185                 /* skip files that don't match the patterns */
186                 for (f_idx = 0; f_idx < RTE_DIM(filters); f_idx++) {
187                         const char *filter = filters[f_idx];
188
189                         if (fnmatch(filter, dirent->d_name, 0) == 0) {
190                                 skip = false;
191                                 break;
192                         }
193                 }
194                 if (skip) {
195                         dirent = readdir(dir);
196                         continue;
197                 }
198
199                 /* try and lock the file */
200                 fd = openat(dir_fd, dirent->d_name, O_RDONLY);
201
202                 /* skip to next file */
203                 if (fd == -1) {
204                         dirent = readdir(dir);
205                         continue;
206                 }
207
208                 /* non-blocking lock */
209                 lck_result = flock(fd, LOCK_EX | LOCK_NB);
210
211                 /* if lock succeeds, remove the file */
212                 if (lck_result != -1)
213                         unlinkat(dir_fd, dirent->d_name, 0);
214                 close(fd);
215                 dirent = readdir(dir);
216         }
217
218         /* closedir closes dir_fd and drops the lock */
219         closedir(dir);
220         return 0;
221
222 error:
223         if (dir)
224                 closedir(dir);
225
226         RTE_LOG(ERR, EAL, "Error while clearing runtime dir: %s\n",
227                 strerror(errno));
228
229         return -1;
230 }
231
232 /* parse a sysfs (or other) file containing one integer value */
233 int
234 eal_parse_sysfs_value(const char *filename, unsigned long *val)
235 {
236         FILE *f;
237         char buf[BUFSIZ];
238         char *end = NULL;
239
240         if ((f = fopen(filename, "r")) == NULL) {
241                 RTE_LOG(ERR, EAL, "%s(): cannot open sysfs value %s\n",
242                         __func__, filename);
243                 return -1;
244         }
245
246         if (fgets(buf, sizeof(buf), f) == NULL) {
247                 RTE_LOG(ERR, EAL, "%s(): cannot read sysfs value %s\n",
248                         __func__, filename);
249                 fclose(f);
250                 return -1;
251         }
252         *val = strtoul(buf, &end, 0);
253         if ((buf[0] == '\0') || (end == NULL) || (*end != '\n')) {
254                 RTE_LOG(ERR, EAL, "%s(): cannot parse sysfs value %s\n",
255                                 __func__, filename);
256                 fclose(f);
257                 return -1;
258         }
259         fclose(f);
260         return 0;
261 }
262
263
264 /* create memory configuration in shared/mmap memory. Take out
265  * a write lock on the memsegs, so we can auto-detect primary/secondary.
266  * This means we never close the file while running (auto-close on exit).
267  * We also don't lock the whole file, so that in future we can use read-locks
268  * on other parts, e.g. memzones, to detect if there are running secondary
269  * processes. */
270 static int
271 rte_eal_config_create(void)
272 {
273         struct rte_config *config = rte_eal_get_configuration();
274         size_t page_sz = sysconf(_SC_PAGE_SIZE);
275         size_t cfg_len = sizeof(*config->mem_config);
276         size_t cfg_len_aligned = RTE_ALIGN(cfg_len, page_sz);
277         void *rte_mem_cfg_addr, *mapped_mem_cfg_addr;
278         int retval;
279         const struct internal_config *internal_conf =
280                 eal_get_internal_configuration();
281
282         const char *pathname = eal_runtime_config_path();
283
284         if (internal_conf->no_shconf)
285                 return 0;
286
287         /* map the config before hugepage address so that we don't waste a page */
288         if (internal_conf->base_virtaddr != 0)
289                 rte_mem_cfg_addr = (void *)
290                         RTE_ALIGN_FLOOR(internal_conf->base_virtaddr -
291                         sizeof(struct rte_mem_config), page_sz);
292         else
293                 rte_mem_cfg_addr = NULL;
294
295         if (mem_cfg_fd < 0){
296                 mem_cfg_fd = open(pathname, O_RDWR | O_CREAT, 0600);
297                 if (mem_cfg_fd < 0) {
298                         RTE_LOG(ERR, EAL, "Cannot open '%s' for rte_mem_config\n",
299                                 pathname);
300                         return -1;
301                 }
302         }
303
304         retval = ftruncate(mem_cfg_fd, cfg_len);
305         if (retval < 0){
306                 close(mem_cfg_fd);
307                 mem_cfg_fd = -1;
308                 RTE_LOG(ERR, EAL, "Cannot resize '%s' for rte_mem_config\n",
309                         pathname);
310                 return -1;
311         }
312
313         retval = fcntl(mem_cfg_fd, F_SETLK, &wr_lock);
314         if (retval < 0){
315                 close(mem_cfg_fd);
316                 mem_cfg_fd = -1;
317                 RTE_LOG(ERR, EAL, "Cannot create lock on '%s'. Is another primary "
318                         "process running?\n", pathname);
319                 return -1;
320         }
321
322         /* reserve space for config */
323         rte_mem_cfg_addr = eal_get_virtual_area(rte_mem_cfg_addr,
324                         &cfg_len_aligned, page_sz, 0, 0);
325         if (rte_mem_cfg_addr == NULL) {
326                 RTE_LOG(ERR, EAL, "Cannot mmap memory for rte_config\n");
327                 close(mem_cfg_fd);
328                 mem_cfg_fd = -1;
329                 return -1;
330         }
331
332         /* remap the actual file into the space we've just reserved */
333         mapped_mem_cfg_addr = mmap(rte_mem_cfg_addr,
334                         cfg_len_aligned, PROT_READ | PROT_WRITE,
335                         MAP_SHARED | MAP_FIXED, mem_cfg_fd, 0);
336         if (mapped_mem_cfg_addr == MAP_FAILED) {
337                 munmap(rte_mem_cfg_addr, cfg_len);
338                 close(mem_cfg_fd);
339                 mem_cfg_fd = -1;
340                 RTE_LOG(ERR, EAL, "Cannot remap memory for rte_config\n");
341                 return -1;
342         }
343
344         memcpy(rte_mem_cfg_addr, config->mem_config, sizeof(struct rte_mem_config));
345         config->mem_config = rte_mem_cfg_addr;
346
347         /* store address of the config in the config itself so that secondary
348          * processes could later map the config into this exact location
349          */
350         config->mem_config->mem_cfg_addr = (uintptr_t) rte_mem_cfg_addr;
351         config->mem_config->dma_maskbits = 0;
352
353         return 0;
354 }
355
356 /* attach to an existing shared memory config */
357 static int
358 rte_eal_config_attach(void)
359 {
360         struct rte_config *config = rte_eal_get_configuration();
361         struct rte_mem_config *mem_config;
362         const struct internal_config *internal_conf =
363                 eal_get_internal_configuration();
364
365         const char *pathname = eal_runtime_config_path();
366
367         if (internal_conf->no_shconf)
368                 return 0;
369
370         if (mem_cfg_fd < 0){
371                 mem_cfg_fd = open(pathname, O_RDWR);
372                 if (mem_cfg_fd < 0) {
373                         RTE_LOG(ERR, EAL, "Cannot open '%s' for rte_mem_config\n",
374                                 pathname);
375                         return -1;
376                 }
377         }
378
379         /* map it as read-only first */
380         mem_config = (struct rte_mem_config *) mmap(NULL, sizeof(*mem_config),
381                         PROT_READ, MAP_SHARED, mem_cfg_fd, 0);
382         if (mem_config == MAP_FAILED) {
383                 close(mem_cfg_fd);
384                 mem_cfg_fd = -1;
385                 RTE_LOG(ERR, EAL, "Cannot mmap memory for rte_config! error %i (%s)\n",
386                         errno, strerror(errno));
387                 return -1;
388         }
389
390         config->mem_config = mem_config;
391
392         return 0;
393 }
394
395 /* reattach the shared config at exact memory location primary process has it */
396 static int
397 rte_eal_config_reattach(void)
398 {
399         struct rte_config *config = rte_eal_get_configuration();
400         struct rte_mem_config *mem_config;
401         void *rte_mem_cfg_addr;
402         const struct internal_config *internal_conf =
403                 eal_get_internal_configuration();
404
405         if (internal_conf->no_shconf)
406                 return 0;
407
408         /* save the address primary process has mapped shared config to */
409         rte_mem_cfg_addr =
410                 (void *) (uintptr_t) config->mem_config->mem_cfg_addr;
411
412         /* unmap original config */
413         munmap(config->mem_config, sizeof(struct rte_mem_config));
414
415         /* remap the config at proper address */
416         mem_config = (struct rte_mem_config *) mmap(rte_mem_cfg_addr,
417                         sizeof(*mem_config), PROT_READ | PROT_WRITE, MAP_SHARED,
418                         mem_cfg_fd, 0);
419
420         close(mem_cfg_fd);
421         mem_cfg_fd = -1;
422
423         if (mem_config == MAP_FAILED || mem_config != rte_mem_cfg_addr) {
424                 if (mem_config != MAP_FAILED) {
425                         /* errno is stale, don't use */
426                         RTE_LOG(ERR, EAL, "Cannot mmap memory for rte_config at [%p], got [%p]"
427                                 " - please use '--" OPT_BASE_VIRTADDR
428                                 "' option\n", rte_mem_cfg_addr, mem_config);
429                         munmap(mem_config, sizeof(struct rte_mem_config));
430                         return -1;
431                 }
432                 RTE_LOG(ERR, EAL, "Cannot mmap memory for rte_config! error %i (%s)\n",
433                         errno, strerror(errno));
434                 return -1;
435         }
436
437         config->mem_config = mem_config;
438
439         return 0;
440 }
441
442 /* Detect if we are a primary or a secondary process */
443 enum rte_proc_type_t
444 eal_proc_type_detect(void)
445 {
446         enum rte_proc_type_t ptype = RTE_PROC_PRIMARY;
447         const char *pathname = eal_runtime_config_path();
448         const struct internal_config *internal_conf =
449                 eal_get_internal_configuration();
450
451         /* if there no shared config, there can be no secondary processes */
452         if (!internal_conf->no_shconf) {
453                 /* if we can open the file but not get a write-lock we are a
454                  * secondary process. NOTE: if we get a file handle back, we
455                  * keep that open and don't close it to prevent a race condition
456                  * between multiple opens.
457                  */
458                 if (((mem_cfg_fd = open(pathname, O_RDWR)) >= 0) &&
459                                 (fcntl(mem_cfg_fd, F_SETLK, &wr_lock) < 0))
460                         ptype = RTE_PROC_SECONDARY;
461         }
462
463         RTE_LOG(INFO, EAL, "Auto-detected process type: %s\n",
464                         ptype == RTE_PROC_PRIMARY ? "PRIMARY" : "SECONDARY");
465
466         return ptype;
467 }
468
469 /* Sets up rte_config structure with the pointer to shared memory config.*/
470 static int
471 rte_config_init(void)
472 {
473         struct rte_config *config = rte_eal_get_configuration();
474         const struct internal_config *internal_conf =
475                 eal_get_internal_configuration();
476
477         config->process_type = internal_conf->process_type;
478
479         switch (config->process_type) {
480         case RTE_PROC_PRIMARY:
481                 if (rte_eal_config_create() < 0)
482                         return -1;
483                 eal_mcfg_update_from_internal();
484                 break;
485         case RTE_PROC_SECONDARY:
486                 if (rte_eal_config_attach() < 0)
487                         return -1;
488                 eal_mcfg_wait_complete();
489                 if (eal_mcfg_check_version() < 0) {
490                         RTE_LOG(ERR, EAL, "Primary and secondary process DPDK version mismatch\n");
491                         return -1;
492                 }
493                 if (rte_eal_config_reattach() < 0)
494                         return -1;
495                 if (!__rte_mp_enable()) {
496                         RTE_LOG(ERR, EAL, "Primary process refused secondary attachment\n");
497                         return -1;
498                 }
499                 eal_mcfg_update_internal();
500                 break;
501         case RTE_PROC_AUTO:
502         case RTE_PROC_INVALID:
503                 RTE_LOG(ERR, EAL, "Invalid process type %d\n",
504                         config->process_type);
505                 return -1;
506         }
507
508         return 0;
509 }
510
511 /* Unlocks hugepage directories that were locked by eal_hugepage_info_init */
512 static void
513 eal_hugedirs_unlock(void)
514 {
515         int i;
516         struct internal_config *internal_conf =
517                 eal_get_internal_configuration();
518
519         for (i = 0; i < MAX_HUGEPAGE_SIZES; i++)
520         {
521                 /* skip uninitialized */
522                 if (internal_conf->hugepage_info[i].lock_descriptor < 0)
523                         continue;
524                 /* unlock hugepage file */
525                 flock(internal_conf->hugepage_info[i].lock_descriptor, LOCK_UN);
526                 close(internal_conf->hugepage_info[i].lock_descriptor);
527                 /* reset the field */
528                 internal_conf->hugepage_info[i].lock_descriptor = -1;
529         }
530 }
531
532 /* display usage */
533 static void
534 eal_usage(const char *prgname)
535 {
536         rte_usage_hook_t hook = eal_get_application_usage_hook();
537
538         printf("\nUsage: %s ", prgname);
539         eal_common_usage();
540         printf("EAL Linux options:\n"
541                "  --"OPT_SOCKET_MEM"        Memory to allocate on sockets (comma separated values)\n"
542                "  --"OPT_SOCKET_LIMIT"      Limit memory allocation on sockets (comma separated values)\n"
543                "  --"OPT_HUGE_DIR"          Directory where hugetlbfs is mounted\n"
544                "  --"OPT_FILE_PREFIX"       Prefix for hugepage filenames\n"
545                "  --"OPT_CREATE_UIO_DEV"    Create /dev/uioX (usually done by hotplug)\n"
546                "  --"OPT_VFIO_INTR"         Interrupt mode for VFIO (legacy|msi|msix)\n"
547                "  --"OPT_VFIO_VF_TOKEN"     VF token (UUID) shared between SR-IOV PF and VFs\n"
548                "  --"OPT_LEGACY_MEM"        Legacy memory mode (no dynamic allocation, contiguous segments)\n"
549                "  --"OPT_SINGLE_FILE_SEGMENTS" Put all hugepage memory in single files\n"
550                "  --"OPT_MATCH_ALLOCATIONS" Free hugepages exactly as allocated\n"
551                "\n");
552         /* Allow the application to print its usage message too if hook is set */
553         if (hook) {
554                 printf("===== Application Usage =====\n\n");
555                 (hook)(prgname);
556         }
557 }
558
559 static int
560 eal_parse_socket_arg(char *strval, volatile uint64_t *socket_arg)
561 {
562         char * arg[RTE_MAX_NUMA_NODES];
563         char *end;
564         int arg_num, i, len;
565         uint64_t total_mem = 0;
566
567         len = strnlen(strval, SOCKET_MEM_STRLEN);
568         if (len == SOCKET_MEM_STRLEN) {
569                 RTE_LOG(ERR, EAL, "--socket-mem is too long\n");
570                 return -1;
571         }
572
573         /* all other error cases will be caught later */
574         if (!isdigit(strval[len-1]))
575                 return -1;
576
577         /* split the optarg into separate socket values */
578         arg_num = rte_strsplit(strval, len,
579                         arg, RTE_MAX_NUMA_NODES, ',');
580
581         /* if split failed, or 0 arguments */
582         if (arg_num <= 0)
583                 return -1;
584
585         /* parse each defined socket option */
586         errno = 0;
587         for (i = 0; i < arg_num; i++) {
588                 uint64_t val;
589                 end = NULL;
590                 val = strtoull(arg[i], &end, 10);
591
592                 /* check for invalid input */
593                 if ((errno != 0)  ||
594                                 (arg[i][0] == '\0') || (end == NULL) || (*end != '\0'))
595                         return -1;
596                 val <<= 20;
597                 total_mem += val;
598                 socket_arg[i] = val;
599         }
600
601         return 0;
602 }
603
604 static int
605 eal_parse_vfio_intr(const char *mode)
606 {
607         struct internal_config *internal_conf =
608                 eal_get_internal_configuration();
609         unsigned i;
610         static struct {
611                 const char *name;
612                 enum rte_intr_mode value;
613         } map[] = {
614                 { "legacy", RTE_INTR_MODE_LEGACY },
615                 { "msi", RTE_INTR_MODE_MSI },
616                 { "msix", RTE_INTR_MODE_MSIX },
617         };
618
619         for (i = 0; i < RTE_DIM(map); i++) {
620                 if (!strcmp(mode, map[i].name)) {
621                         internal_conf->vfio_intr_mode = map[i].value;
622                         return 0;
623                 }
624         }
625         return -1;
626 }
627
628 static int
629 eal_parse_vfio_vf_token(const char *vf_token)
630 {
631         struct internal_config *cfg = eal_get_internal_configuration();
632         rte_uuid_t uuid;
633
634         if (!rte_uuid_parse(vf_token, uuid)) {
635                 rte_uuid_copy(cfg->vfio_vf_token, uuid);
636                 return 0;
637         }
638
639         return -1;
640 }
641
642 /* Parse the arguments for --log-level only */
643 static void
644 eal_log_level_parse(int argc, char **argv)
645 {
646         int opt;
647         char **argvopt;
648         int option_index;
649         const int old_optind = optind;
650         const int old_optopt = optopt;
651         char * const old_optarg = optarg;
652         struct internal_config *internal_conf =
653                 eal_get_internal_configuration();
654
655         argvopt = argv;
656         optind = 1;
657
658         while ((opt = getopt_long(argc, argvopt, eal_short_options,
659                                   eal_long_options, &option_index)) != EOF) {
660
661                 int ret;
662
663                 /* getopt is not happy, stop right now */
664                 if (opt == '?')
665                         break;
666
667                 ret = (opt == OPT_LOG_LEVEL_NUM) ?
668                         eal_parse_common_option(opt, optarg, internal_conf) : 0;
669
670                 /* common parser is not happy */
671                 if (ret < 0)
672                         break;
673         }
674
675         /* restore getopt lib */
676         optind = old_optind;
677         optopt = old_optopt;
678         optarg = old_optarg;
679 }
680
681 /* Parse the argument given in the command line of the application */
682 static int
683 eal_parse_args(int argc, char **argv)
684 {
685         int opt, ret;
686         char **argvopt;
687         int option_index;
688         char *prgname = argv[0];
689         const int old_optind = optind;
690         const int old_optopt = optopt;
691         char * const old_optarg = optarg;
692         struct internal_config *internal_conf =
693                 eal_get_internal_configuration();
694
695         argvopt = argv;
696         optind = 1;
697
698         while ((opt = getopt_long(argc, argvopt, eal_short_options,
699                                   eal_long_options, &option_index)) != EOF) {
700
701                 /* getopt didn't recognise the option */
702                 if (opt == '?') {
703                         eal_usage(prgname);
704                         ret = -1;
705                         goto out;
706                 }
707
708                 /* eal_log_level_parse() already handled this option */
709                 if (opt == OPT_LOG_LEVEL_NUM)
710                         continue;
711
712                 ret = eal_parse_common_option(opt, optarg, internal_conf);
713                 /* common parser is not happy */
714                 if (ret < 0) {
715                         eal_usage(prgname);
716                         ret = -1;
717                         goto out;
718                 }
719                 /* common parser handled this option */
720                 if (ret == 0)
721                         continue;
722
723                 switch (opt) {
724                 case 'h':
725                         eal_usage(prgname);
726                         exit(EXIT_SUCCESS);
727
728                 case OPT_HUGE_DIR_NUM:
729                 {
730                         char *hdir = strdup(optarg);
731                         if (hdir == NULL)
732                                 RTE_LOG(ERR, EAL, "Could not store hugepage directory\n");
733                         else {
734                                 /* free old hugepage dir */
735                                 if (internal_conf->hugepage_dir != NULL)
736                                         free(internal_conf->hugepage_dir);
737                                 internal_conf->hugepage_dir = hdir;
738                         }
739                         break;
740                 }
741                 case OPT_FILE_PREFIX_NUM:
742                 {
743                         char *prefix = strdup(optarg);
744                         if (prefix == NULL)
745                                 RTE_LOG(ERR, EAL, "Could not store file prefix\n");
746                         else {
747                                 /* free old prefix */
748                                 if (internal_conf->hugefile_prefix != NULL)
749                                         free(internal_conf->hugefile_prefix);
750                                 internal_conf->hugefile_prefix = prefix;
751                         }
752                         break;
753                 }
754                 case OPT_SOCKET_MEM_NUM:
755                         if (eal_parse_socket_arg(optarg,
756                                         internal_conf->socket_mem) < 0) {
757                                 RTE_LOG(ERR, EAL, "invalid parameters for --"
758                                                 OPT_SOCKET_MEM "\n");
759                                 eal_usage(prgname);
760                                 ret = -1;
761                                 goto out;
762                         }
763                         internal_conf->force_sockets = 1;
764                         break;
765
766                 case OPT_SOCKET_LIMIT_NUM:
767                         if (eal_parse_socket_arg(optarg,
768                                         internal_conf->socket_limit) < 0) {
769                                 RTE_LOG(ERR, EAL, "invalid parameters for --"
770                                                 OPT_SOCKET_LIMIT "\n");
771                                 eal_usage(prgname);
772                                 ret = -1;
773                                 goto out;
774                         }
775                         internal_conf->force_socket_limits = 1;
776                         break;
777
778                 case OPT_VFIO_INTR_NUM:
779                         if (eal_parse_vfio_intr(optarg) < 0) {
780                                 RTE_LOG(ERR, EAL, "invalid parameters for --"
781                                                 OPT_VFIO_INTR "\n");
782                                 eal_usage(prgname);
783                                 ret = -1;
784                                 goto out;
785                         }
786                         break;
787
788                 case OPT_VFIO_VF_TOKEN_NUM:
789                         if (eal_parse_vfio_vf_token(optarg) < 0) {
790                                 RTE_LOG(ERR, EAL, "invalid parameters for --"
791                                                 OPT_VFIO_VF_TOKEN "\n");
792                                 eal_usage(prgname);
793                                 ret = -1;
794                                 goto out;
795                         }
796                         break;
797
798                 case OPT_CREATE_UIO_DEV_NUM:
799                         internal_conf->create_uio_dev = 1;
800                         break;
801
802                 case OPT_MBUF_POOL_OPS_NAME_NUM:
803                 {
804                         char *ops_name = strdup(optarg);
805                         if (ops_name == NULL)
806                                 RTE_LOG(ERR, EAL, "Could not store mbuf pool ops name\n");
807                         else {
808                                 /* free old ops name */
809                                 if (internal_conf->user_mbuf_pool_ops_name !=
810                                                 NULL)
811                                         free(internal_conf->user_mbuf_pool_ops_name);
812
813                                 internal_conf->user_mbuf_pool_ops_name =
814                                                 ops_name;
815                         }
816                         break;
817                 }
818                 case OPT_MATCH_ALLOCATIONS_NUM:
819                         internal_conf->match_allocations = 1;
820                         break;
821
822                 default:
823                         if (opt < OPT_LONG_MIN_NUM && isprint(opt)) {
824                                 RTE_LOG(ERR, EAL, "Option %c is not supported "
825                                         "on Linux\n", opt);
826                         } else if (opt >= OPT_LONG_MIN_NUM &&
827                                    opt < OPT_LONG_MAX_NUM) {
828                                 RTE_LOG(ERR, EAL, "Option %s is not supported "
829                                         "on Linux\n",
830                                         eal_long_options[option_index].name);
831                         } else {
832                                 RTE_LOG(ERR, EAL, "Option %d is not supported "
833                                         "on Linux\n", opt);
834                         }
835                         eal_usage(prgname);
836                         ret = -1;
837                         goto out;
838                 }
839         }
840
841         /* create runtime data directory. In no_shconf mode, skip any errors */
842         if (eal_create_runtime_dir() < 0) {
843                 if (internal_conf->no_shconf == 0) {
844                         RTE_LOG(ERR, EAL, "Cannot create runtime directory\n");
845                         ret = -1;
846                         goto out;
847                 } else
848                         RTE_LOG(WARNING, EAL, "No DPDK runtime directory created\n");
849         }
850
851         if (eal_adjust_config(internal_conf) != 0) {
852                 ret = -1;
853                 goto out;
854         }
855
856         /* sanity checks */
857         if (eal_check_common_options(internal_conf) != 0) {
858                 eal_usage(prgname);
859                 ret = -1;
860                 goto out;
861         }
862
863         if (optind >= 0)
864                 argv[optind-1] = prgname;
865         ret = optind-1;
866
867 out:
868         /* restore getopt lib */
869         optind = old_optind;
870         optopt = old_optopt;
871         optarg = old_optarg;
872
873         return ret;
874 }
875
876 static int
877 check_socket(const struct rte_memseg_list *msl, void *arg)
878 {
879         int *socket_id = arg;
880
881         if (msl->external)
882                 return 0;
883
884         return *socket_id == msl->socket_id;
885 }
886
887 static void
888 eal_check_mem_on_local_socket(void)
889 {
890         int socket_id;
891         const struct rte_config *config = rte_eal_get_configuration();
892
893         socket_id = rte_lcore_to_socket_id(config->main_lcore);
894
895         if (rte_memseg_list_walk(check_socket, &socket_id) == 0)
896                 RTE_LOG(WARNING, EAL, "WARNING: Main core has no memory on local socket!\n");
897 }
898
899 static int
900 sync_func(__rte_unused void *arg)
901 {
902         return 0;
903 }
904
905 /*
906  * Request iopl privilege for all RPL, returns 0 on success
907  * iopl() call is mostly for the i386 architecture. For other architectures,
908  * return -1 to indicate IO privilege can't be changed in this way.
909  */
910 int
911 rte_eal_iopl_init(void)
912 {
913 #if defined(RTE_ARCH_X86)
914         if (iopl(3) != 0)
915                 return -1;
916 #endif
917         return 0;
918 }
919
920 #ifdef VFIO_PRESENT
921 static int rte_eal_vfio_setup(void)
922 {
923         if (rte_vfio_enable("vfio"))
924                 return -1;
925
926         return 0;
927 }
928 #endif
929
930 static void rte_eal_init_alert(const char *msg)
931 {
932         fprintf(stderr, "EAL: FATAL: %s\n", msg);
933         RTE_LOG(ERR, EAL, "%s\n", msg);
934 }
935
936 /*
937  * On Linux 3.6+, even if VFIO is not loaded, whenever IOMMU is enabled in the
938  * BIOS and in the kernel, /sys/kernel/iommu_groups path will contain kernel
939  * IOMMU groups. If IOMMU is not enabled, that path would be empty.
940  * Therefore, checking if the path is empty will tell us if IOMMU is enabled.
941  */
942 static bool
943 is_iommu_enabled(void)
944 {
945         DIR *dir = opendir(KERNEL_IOMMU_GROUPS_PATH);
946         struct dirent *d;
947         int n = 0;
948
949         /* if directory doesn't exist, assume IOMMU is not enabled */
950         if (dir == NULL)
951                 return false;
952
953         while ((d = readdir(dir)) != NULL) {
954                 /* skip dot and dot-dot */
955                 if (++n > 2)
956                         break;
957         }
958         closedir(dir);
959
960         return n > 2;
961 }
962
963 /* Launch threads, called at application init(). */
964 int
965 rte_eal_init(int argc, char **argv)
966 {
967         int i, fctret, ret;
968         pthread_t thread_id;
969         static uint32_t run_once;
970         uint32_t has_run = 0;
971         const char *p;
972         static char logid[PATH_MAX];
973         char cpuset[RTE_CPU_AFFINITY_STR_LEN];
974         char thread_name[RTE_MAX_THREAD_NAME_LEN];
975         bool phys_addrs;
976         const struct rte_config *config = rte_eal_get_configuration();
977         struct internal_config *internal_conf =
978                 eal_get_internal_configuration();
979
980         /* checks if the machine is adequate */
981         if (!rte_cpu_is_supported()) {
982                 rte_eal_init_alert("unsupported cpu type.");
983                 rte_errno = ENOTSUP;
984                 return -1;
985         }
986
987         if (!__atomic_compare_exchange_n(&run_once, &has_run, 1, 0,
988                                         __ATOMIC_RELAXED, __ATOMIC_RELAXED)) {
989                 rte_eal_init_alert("already called initialization.");
990                 rte_errno = EALREADY;
991                 return -1;
992         }
993
994         p = strrchr(argv[0], '/');
995         strlcpy(logid, p ? p + 1 : argv[0], sizeof(logid));
996         thread_id = pthread_self();
997
998         eal_reset_internal_config(internal_conf);
999
1000         /* set log level as early as possible */
1001         eal_log_level_parse(argc, argv);
1002
1003         /* clone argv to report out later in telemetry */
1004         eal_save_args(argc, argv);
1005
1006         if (rte_eal_cpu_init() < 0) {
1007                 rte_eal_init_alert("Cannot detect lcores.");
1008                 rte_errno = ENOTSUP;
1009                 return -1;
1010         }
1011
1012         fctret = eal_parse_args(argc, argv);
1013         if (fctret < 0) {
1014                 rte_eal_init_alert("Invalid 'command line' arguments.");
1015                 rte_errno = EINVAL;
1016                 __atomic_store_n(&run_once, 0, __ATOMIC_RELAXED);
1017                 return -1;
1018         }
1019
1020         if (eal_plugins_init() < 0) {
1021                 rte_eal_init_alert("Cannot init plugins");
1022                 rte_errno = EINVAL;
1023                 __atomic_store_n(&run_once, 0, __ATOMIC_RELAXED);
1024                 return -1;
1025         }
1026
1027         if (eal_trace_init() < 0) {
1028                 rte_eal_init_alert("Cannot init trace");
1029                 rte_errno = EFAULT;
1030                 return -1;
1031         }
1032
1033         if (eal_option_device_parse()) {
1034                 rte_errno = ENODEV;
1035                 __atomic_store_n(&run_once, 0, __ATOMIC_RELAXED);
1036                 return -1;
1037         }
1038
1039         if (rte_config_init() < 0) {
1040                 rte_eal_init_alert("Cannot init config");
1041                 return -1;
1042         }
1043
1044         if (rte_eal_intr_init() < 0) {
1045                 rte_eal_init_alert("Cannot init interrupt-handling thread");
1046                 return -1;
1047         }
1048
1049         if (rte_eal_alarm_init() < 0) {
1050                 rte_eal_init_alert("Cannot init alarm");
1051                 /* rte_eal_alarm_init sets rte_errno on failure. */
1052                 return -1;
1053         }
1054
1055         /* Put mp channel init before bus scan so that we can init the vdev
1056          * bus through mp channel in the secondary process before the bus scan.
1057          */
1058         if (rte_mp_channel_init() < 0 && rte_errno != ENOTSUP) {
1059                 rte_eal_init_alert("failed to init mp channel");
1060                 if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
1061                         rte_errno = EFAULT;
1062                         return -1;
1063                 }
1064         }
1065
1066         /* register multi-process action callbacks for hotplug */
1067         if (eal_mp_dev_hotplug_init() < 0) {
1068                 rte_eal_init_alert("failed to register mp callback for hotplug");
1069                 return -1;
1070         }
1071
1072         if (rte_bus_scan()) {
1073                 rte_eal_init_alert("Cannot scan the buses for devices");
1074                 rte_errno = ENODEV;
1075                 __atomic_store_n(&run_once, 0, __ATOMIC_RELAXED);
1076                 return -1;
1077         }
1078
1079         phys_addrs = rte_eal_using_phys_addrs() != 0;
1080
1081         /* if no EAL option "--iova-mode=<pa|va>", use bus IOVA scheme */
1082         if (internal_conf->iova_mode == RTE_IOVA_DC) {
1083                 /* autodetect the IOVA mapping mode */
1084                 enum rte_iova_mode iova_mode = rte_bus_get_iommu_class();
1085
1086                 if (iova_mode == RTE_IOVA_DC) {
1087                         RTE_LOG(DEBUG, EAL, "Buses did not request a specific IOVA mode.\n");
1088
1089                         if (!phys_addrs) {
1090                                 /* if we have no access to physical addresses,
1091                                  * pick IOVA as VA mode.
1092                                  */
1093                                 iova_mode = RTE_IOVA_VA;
1094                                 RTE_LOG(DEBUG, EAL, "Physical addresses are unavailable, selecting IOVA as VA mode.\n");
1095 #if defined(RTE_LIB_KNI) && LINUX_VERSION_CODE >= KERNEL_VERSION(4, 10, 0)
1096                         } else if (rte_eal_check_module("rte_kni") == 1) {
1097                                 iova_mode = RTE_IOVA_PA;
1098                                 RTE_LOG(DEBUG, EAL, "KNI is loaded, selecting IOVA as PA mode for better KNI performance.\n");
1099 #endif
1100                         } else if (is_iommu_enabled()) {
1101                                 /* we have an IOMMU, pick IOVA as VA mode */
1102                                 iova_mode = RTE_IOVA_VA;
1103                                 RTE_LOG(DEBUG, EAL, "IOMMU is available, selecting IOVA as VA mode.\n");
1104                         } else {
1105                                 /* physical addresses available, and no IOMMU
1106                                  * found, so pick IOVA as PA.
1107                                  */
1108                                 iova_mode = RTE_IOVA_PA;
1109                                 RTE_LOG(DEBUG, EAL, "IOMMU is not available, selecting IOVA as PA mode.\n");
1110                         }
1111                 }
1112 #if defined(RTE_LIB_KNI) && LINUX_VERSION_CODE < KERNEL_VERSION(4, 10, 0)
1113                 /* Workaround for KNI which requires physical address to work
1114                  * in kernels < 4.10
1115                  */
1116                 if (iova_mode == RTE_IOVA_VA &&
1117                                 rte_eal_check_module("rte_kni") == 1) {
1118                         if (phys_addrs) {
1119                                 iova_mode = RTE_IOVA_PA;
1120                                 RTE_LOG(WARNING, EAL, "Forcing IOVA as 'PA' because KNI module is loaded\n");
1121                         } else {
1122                                 RTE_LOG(DEBUG, EAL, "KNI can not work since physical addresses are unavailable\n");
1123                         }
1124                 }
1125 #endif
1126                 rte_eal_get_configuration()->iova_mode = iova_mode;
1127         } else {
1128                 rte_eal_get_configuration()->iova_mode =
1129                         internal_conf->iova_mode;
1130         }
1131
1132         if (rte_eal_iova_mode() == RTE_IOVA_PA && !phys_addrs) {
1133                 rte_eal_init_alert("Cannot use IOVA as 'PA' since physical addresses are not available");
1134                 rte_errno = EINVAL;
1135                 return -1;
1136         }
1137
1138         RTE_LOG(INFO, EAL, "Selected IOVA mode '%s'\n",
1139                 rte_eal_iova_mode() == RTE_IOVA_PA ? "PA" : "VA");
1140
1141         if (internal_conf->no_hugetlbfs == 0) {
1142                 /* rte_config isn't initialized yet */
1143                 ret = internal_conf->process_type == RTE_PROC_PRIMARY ?
1144                                 eal_hugepage_info_init() :
1145                                 eal_hugepage_info_read();
1146                 if (ret < 0) {
1147                         rte_eal_init_alert("Cannot get hugepage information.");
1148                         rte_errno = EACCES;
1149                         __atomic_store_n(&run_once, 0, __ATOMIC_RELAXED);
1150                         return -1;
1151                 }
1152         }
1153
1154         if (internal_conf->memory == 0 && internal_conf->force_sockets == 0) {
1155                 if (internal_conf->no_hugetlbfs)
1156                         internal_conf->memory = MEMSIZE_IF_NO_HUGE_PAGE;
1157         }
1158
1159         if (internal_conf->vmware_tsc_map == 1) {
1160 #ifdef RTE_LIBRTE_EAL_VMWARE_TSC_MAP_SUPPORT
1161                 rte_cycles_vmware_tsc_map = 1;
1162                 RTE_LOG (DEBUG, EAL, "Using VMWARE TSC MAP, "
1163                                 "you must have monitor_control.pseudo_perfctr = TRUE\n");
1164 #else
1165                 RTE_LOG (WARNING, EAL, "Ignoring --vmware-tsc-map because "
1166                                 "RTE_LIBRTE_EAL_VMWARE_TSC_MAP_SUPPORT is not set\n");
1167 #endif
1168         }
1169
1170         if (eal_log_init(logid, internal_conf->syslog_facility) < 0) {
1171                 rte_eal_init_alert("Cannot init logging.");
1172                 rte_errno = ENOMEM;
1173                 __atomic_store_n(&run_once, 0, __ATOMIC_RELAXED);
1174                 return -1;
1175         }
1176
1177 #ifdef VFIO_PRESENT
1178         if (rte_eal_vfio_setup() < 0) {
1179                 rte_eal_init_alert("Cannot init VFIO");
1180                 rte_errno = EAGAIN;
1181                 __atomic_store_n(&run_once, 0, __ATOMIC_RELAXED);
1182                 return -1;
1183         }
1184 #endif
1185         /* in secondary processes, memory init may allocate additional fbarrays
1186          * not present in primary processes, so to avoid any potential issues,
1187          * initialize memzones first.
1188          */
1189         if (rte_eal_memzone_init() < 0) {
1190                 rte_eal_init_alert("Cannot init memzone");
1191                 rte_errno = ENODEV;
1192                 return -1;
1193         }
1194
1195         if (rte_eal_memory_init() < 0) {
1196                 rte_eal_init_alert("Cannot init memory");
1197                 rte_errno = ENOMEM;
1198                 return -1;
1199         }
1200
1201         /* the directories are locked during eal_hugepage_info_init */
1202         eal_hugedirs_unlock();
1203
1204         if (rte_eal_malloc_heap_init() < 0) {
1205                 rte_eal_init_alert("Cannot init malloc heap");
1206                 rte_errno = ENODEV;
1207                 return -1;
1208         }
1209
1210         if (rte_eal_tailqs_init() < 0) {
1211                 rte_eal_init_alert("Cannot init tail queues for objects");
1212                 rte_errno = EFAULT;
1213                 return -1;
1214         }
1215
1216         if (rte_eal_timer_init() < 0) {
1217                 rte_eal_init_alert("Cannot init HPET or TSC timers");
1218                 rte_errno = ENOTSUP;
1219                 return -1;
1220         }
1221
1222         eal_check_mem_on_local_socket();
1223
1224         if (pthread_setaffinity_np(pthread_self(), sizeof(rte_cpuset_t),
1225                         &lcore_config[config->main_lcore].cpuset) != 0) {
1226                 rte_eal_init_alert("Cannot set affinity");
1227                 rte_errno = EINVAL;
1228                 return -1;
1229         }
1230         __rte_thread_init(config->main_lcore,
1231                 &lcore_config[config->main_lcore].cpuset);
1232
1233         ret = eal_thread_dump_current_affinity(cpuset, sizeof(cpuset));
1234         RTE_LOG(DEBUG, EAL, "Main lcore %u is ready (tid=%zx;cpuset=[%s%s])\n",
1235                 config->main_lcore, (uintptr_t)thread_id, cpuset,
1236                 ret == 0 ? "" : "...");
1237
1238         RTE_LCORE_FOREACH_WORKER(i) {
1239
1240                 /*
1241                  * create communication pipes between main thread
1242                  * and children
1243                  */
1244                 if (pipe(lcore_config[i].pipe_main2worker) < 0)
1245                         rte_panic("Cannot create pipe\n");
1246                 if (pipe(lcore_config[i].pipe_worker2main) < 0)
1247                         rte_panic("Cannot create pipe\n");
1248
1249                 lcore_config[i].state = WAIT;
1250
1251                 /* create a thread for each lcore */
1252                 ret = pthread_create(&lcore_config[i].thread_id, NULL,
1253                                      eal_thread_loop, NULL);
1254                 if (ret != 0)
1255                         rte_panic("Cannot create thread\n");
1256
1257                 /* Set thread_name for aid in debugging. */
1258                 snprintf(thread_name, sizeof(thread_name),
1259                         "lcore-worker-%d", i);
1260                 ret = rte_thread_setname(lcore_config[i].thread_id,
1261                                                 thread_name);
1262                 if (ret != 0)
1263                         RTE_LOG(DEBUG, EAL,
1264                                 "Cannot set name for lcore thread\n");
1265
1266                 ret = pthread_setaffinity_np(lcore_config[i].thread_id,
1267                         sizeof(rte_cpuset_t), &lcore_config[i].cpuset);
1268                 if (ret != 0)
1269                         rte_panic("Cannot set affinity\n");
1270         }
1271
1272         /*
1273          * Launch a dummy function on all worker lcores, so that main lcore
1274          * knows they are all ready when this function returns.
1275          */
1276         rte_eal_mp_remote_launch(sync_func, NULL, SKIP_MAIN);
1277         rte_eal_mp_wait_lcore();
1278
1279         /* initialize services so vdevs register service during bus_probe. */
1280         ret = rte_service_init();
1281         if (ret) {
1282                 rte_eal_init_alert("rte_service_init() failed");
1283                 rte_errno = -ret;
1284                 return -1;
1285         }
1286
1287         /* Probe all the buses and devices/drivers on them */
1288         if (rte_bus_probe()) {
1289                 rte_eal_init_alert("Cannot probe devices");
1290                 rte_errno = ENOTSUP;
1291                 return -1;
1292         }
1293
1294 #ifdef VFIO_PRESENT
1295         /* Register mp action after probe() so that we got enough info */
1296         if (rte_vfio_is_enabled("vfio") && vfio_mp_sync_setup() < 0)
1297                 return -1;
1298 #endif
1299
1300         /* initialize default service/lcore mappings and start running. Ignore
1301          * -ENOTSUP, as it indicates no service coremask passed to EAL.
1302          */
1303         ret = rte_service_start_with_defaults();
1304         if (ret < 0 && ret != -ENOTSUP) {
1305                 rte_errno = -ret;
1306                 return -1;
1307         }
1308
1309         /*
1310          * Clean up unused files in runtime directory. We do this at the end of
1311          * init and not at the beginning because we want to clean stuff up
1312          * whether we are primary or secondary process, but we cannot remove
1313          * primary process' files because secondary should be able to run even
1314          * if primary process is dead.
1315          *
1316          * In no_shconf mode, no runtime directory is created in the first
1317          * place, so no cleanup needed.
1318          */
1319         if (!internal_conf->no_shconf && eal_clean_runtime_dir() < 0) {
1320                 rte_eal_init_alert("Cannot clear runtime directory");
1321                 return -1;
1322         }
1323         if (rte_eal_process_type() == RTE_PROC_PRIMARY && !internal_conf->no_telemetry) {
1324                 int tlog = rte_log_register_type_and_pick_level(
1325                                 "lib.telemetry", RTE_LOG_WARNING);
1326                 if (tlog < 0)
1327                         tlog = RTE_LOGTYPE_EAL;
1328                 if (rte_telemetry_init(rte_eal_get_runtime_dir(),
1329                                 rte_version(),
1330                                 &internal_conf->ctrl_cpuset, rte_log, tlog) != 0)
1331                         return -1;
1332         }
1333
1334         eal_mcfg_complete();
1335
1336         return fctret;
1337 }
1338
1339 static int
1340 mark_freeable(const struct rte_memseg_list *msl, const struct rte_memseg *ms,
1341                 void *arg __rte_unused)
1342 {
1343         /* ms is const, so find this memseg */
1344         struct rte_memseg *found;
1345
1346         if (msl->external)
1347                 return 0;
1348
1349         found = rte_mem_virt2memseg(ms->addr, msl);
1350
1351         found->flags &= ~RTE_MEMSEG_FLAG_DO_NOT_FREE;
1352
1353         return 0;
1354 }
1355
1356 int
1357 rte_eal_cleanup(void)
1358 {
1359         /* if we're in a primary process, we need to mark hugepages as freeable
1360          * so that finalization can release them back to the system.
1361          */
1362         struct internal_config *internal_conf =
1363                 eal_get_internal_configuration();
1364
1365         if (rte_eal_process_type() == RTE_PROC_PRIMARY)
1366                 rte_memseg_walk(mark_freeable, NULL);
1367         rte_service_finalize();
1368         rte_mp_channel_cleanup();
1369         /* after this point, any DPDK pointers will become dangling */
1370         rte_eal_memory_detach();
1371         rte_eal_alarm_cleanup();
1372         rte_trace_save();
1373         eal_trace_fini();
1374         eal_cleanup_config(internal_conf);
1375         return 0;
1376 }
1377
1378 int rte_eal_create_uio_dev(void)
1379 {
1380         const struct internal_config *internal_conf =
1381                 eal_get_internal_configuration();
1382
1383         return internal_conf->create_uio_dev;
1384 }
1385
1386 enum rte_intr_mode
1387 rte_eal_vfio_intr_mode(void)
1388 {
1389         const struct internal_config *internal_conf =
1390                 eal_get_internal_configuration();
1391
1392         return internal_conf->vfio_intr_mode;
1393 }
1394
1395 void
1396 rte_eal_vfio_get_vf_token(rte_uuid_t vf_token)
1397 {
1398         struct internal_config *cfg = eal_get_internal_configuration();
1399
1400         rte_uuid_copy(vf_token, cfg->vfio_vf_token);
1401 }
1402
1403 int
1404 rte_eal_check_module(const char *module_name)
1405 {
1406         char sysfs_mod_name[PATH_MAX];
1407         struct stat st;
1408         int n;
1409
1410         if (NULL == module_name)
1411                 return -1;
1412
1413         /* Check if there is sysfs mounted */
1414         if (stat("/sys/module", &st) != 0) {
1415                 RTE_LOG(DEBUG, EAL, "sysfs is not mounted! error %i (%s)\n",
1416                         errno, strerror(errno));
1417                 return -1;
1418         }
1419
1420         /* A module might be built-in, therefore try sysfs */
1421         n = snprintf(sysfs_mod_name, PATH_MAX, "/sys/module/%s", module_name);
1422         if (n < 0 || n > PATH_MAX) {
1423                 RTE_LOG(DEBUG, EAL, "Could not format module path\n");
1424                 return -1;
1425         }
1426
1427         if (stat(sysfs_mod_name, &st) != 0) {
1428                 RTE_LOG(DEBUG, EAL, "Module %s not found! error %i (%s)\n",
1429                         sysfs_mod_name, errno, strerror(errno));
1430                 return 0;
1431         }
1432
1433         /* Module has been found */
1434         return 1;
1435 }